中国计划进行行星防御测试:以26倍音速撞击小行星
China Plans Planetary Defense Test By Slamming Mach 26 Spacecraft Into Asteroid

原始链接: https://www.zerohedge.com/technology/china-plans-planetary-defense-test-slamming-mach-26-spacecraft-asteroid

由中国国家航天局(CNSA)领导的一个研究团队正在开发一项雄心勃勃的行星防御任务,相关细节在一篇目前正处于同行评审阶段的论文中有所阐述。该任务旨在通过以26马赫的速度(比美国国家航空航天局2022年的DART任务快近50%)撞击30米宽的小行星“2015 XF261”,来测试小行星偏转技术。 该任务计划于2029年或2030年执行,涉及两艘航天器:一个撞击器和一个观测器。通过利用金星重力助推并部署监测探测器,研究人员打算测量小行星在轨道、结构和表面上的变化。与改变小行星绕卫星运行轨道的DART任务不同,此次测试旨在演示对小行星绕太阳运行轨道的直接偏转,从而更贴近现实世界的行星防御场景。 如果成功,这将标志着中国首次实现端到端的行星防御演示。预计研究结果将为如何有效减轻潜在的小行星威胁提供关键数据。这一努力与更广泛的全球倡议相一致,例如美国国家航空航天局即将于2027年发射的“近地天体探测器”(NEO Surveyor),该项目旨在加强对危险近地天体的探测和监测。

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原文

A new paper under peer review by the Chinese-language Journal of Deep Space Exploration lays out an ambitious plan to crash a spacecraft at Mach 26, or 20,000 mph, into a near-Earth asteroid to test new planetary defenses.

The South China Morning Post reports that a team led by Li Mingtao, chief scientist for planetary defense at the China National Space Administration, is planning a mission even more ambitious than NASA’s Double Asteroid Redirection Test (DART).

That mission would slam a spacecraft into 2015 XF261, an asteroid estimated to be about 30 meters wide, in either 2029 or 2030.

"Dart was the first to demonstrate asteroid deflection by kinetic impact in space, but it did not directly change an asteroid's orbit around the sun relative to Earth, making it different from a real planetary-defense scenario," the researchers wrote in the report.

The planned impact would be nearly 50% faster than NASA’s 2022 DART, which hit the asteroid Dimorphos at 6.1 kilometers per second, or about Mach 18.

According to the paper, the mission calls for two spacecraft: one interceptor and one observation spacecraft, which would use a Venus gravity assist before rendezvousing with the target. It would deploy a small probe to monitor the collision and measure changes to the asteroid's orbit, shape, surface, and internal structure.

"Focusing on China's first asteroid-defense demonstration and verification mission, planned for implementation before 2030, this paper systematically reviews the frontier scientific questions in kinetic-impact asteroid defense to support mission design, implementation, and preliminary scientific research," the researchers said.

If successful, the test would become China's first end-to-end demonstration of an operational planetary-defense system. It will help scientists better understand how – and when – a kinetic impactor spacecraft could be used to deflect an Earth-bound asteroid.

Meanwhile, SpaceX will launch the NEO Surveyor asteroid-detection telescope no earlier than September 2027, which will discover and monitor most of the potentially hazardous asteroids and comets that come within 30 million miles of Earth's orbit.

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